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基于带有MXene电极的碳纳米管森林的大面积垂直光热探测器的系统设计

System design of large-area vertical photothermoelectric detectors based on carbon nanotube forests with MXene electrodes.

作者信息

Wang Jiaqi, Xie Zhemiao, Liu Jiayu Alexander, Zhou Rui, Lu Guanxuan, Yeow John T W

机构信息

Advanced Micro-/Nano- Devices Lab, Department of Systems Design Engineering, University of Waterloo 200 University Ave West Waterloo Ontario N2L 3G1 Canada

出版信息

Nanoscale Adv. 2023 Jan 20;5(4):1133-1140. doi: 10.1039/d2na00895e. eCollection 2023 Feb 14.

Abstract

Photothermoelectric (PTE) detectors that combine photothermal and thermoelectric conversion have emerged in recent years. They can overcome bandgap limitations and achieve effective infrared detection. However, the development of PTE detectors and the related system design are in the early phases. Herein, we present vertical PTE detectors utilizing the active layer of carbon nanotube forests with MXenes acting as top electrodes. The detector demonstrates its capacity for sensitive infrared detection and rapid infrared response. We also investigated the relationship between photoresponse and different MXene electrode types as well as their thickness, which guides the PTE detector configuration design. Furthermore, we packed the PTE detectors with a polytetrafluoroethylene (PTFE, Teflon) cavity. The photoresponse is improved and the degradation is significantly delayed. We also applied this PTE detector system for non-destructive tracking (NDT) applications, where the photovoltage mapping pattern proves the viability of the imaging track. This work paves the way toward infrared energy harvesters and customized industrial NDT measurement.

摘要

近年来,结合了光热转换和热电转换的光热电器件(PTE探测器)应运而生。它们能够克服带隙限制,实现有效的红外探测。然而,PTE探测器的发展以及相关系统设计尚处于早期阶段。在此,我们展示了一种垂直PTE探测器,该探测器利用碳纳米管森林的有源层,并以MXene作为顶部电极。该探测器展示了其灵敏的红外探测能力和快速的红外响应能力。我们还研究了光响应与不同MXene电极类型及其厚度之间的关系,这为PTE探测器的结构设计提供了指导。此外,我们将PTE探测器封装在聚四氟乙烯(PTFE,特氟龙)腔体中。光响应得到改善,并且降解明显延迟。我们还将这种PTE探测器系统应用于无损检测(NDT)应用中,其中光电压映射模式证明了成像跟踪的可行性。这项工作为红外能量收集器和定制化工业NDT测量铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afd4/9926910/e05f5a42d9b0/d2na00895e-f1.jpg

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